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首页> 外文期刊>International Biodeterioration & Biodegradation >Evaluation of of mold growth on sugarcane bagasse particleboards in natural exposure and in accelerated test
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Evaluation of of mold growth on sugarcane bagasse particleboards in natural exposure and in accelerated test

机译:在自然暴露和加速试验中评估甘蔗蔗渣刨花板上霉菌的生长

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The objective of this study was to investigate the performance of alternative sugarcane bagasse particle board (BCP) using castor oil polyurethane resin in comparison with commercial medium density wood particle board (MDP) under natural and accelerated test conditions. The particle boards were evaluated after 12 months of exposure to natural weathering in Pirassununga (21.9965 degrees S, 47.4262 degrees W), Brazil and by an accelerated mold growth test under laboratory conditions. The mold growth was quantified according to the Standards ASTM D 3273-12 (2012) and the results were evaluated by statistical analysis through the Proportional Chances MOdel (PCM). For both materials, the surface coating with castor oil based bi-component polyurethane resin was less colonized than the non-coated materials; independent of the particleboard type. Additionally, the bending test shows that the sugarcane bagasse particle boards presents better performance of module of elasticity (MOR) (7.7 MPa) in comparison with the commercial wood particle boards (3.6 MPa) after exposed to accelerated tests for mold colonization. The surface coating with castor oil based polyurethane resin reduces mold growth, therefore these results support the potential use of this alternative resin both as a binder and as a surface coating in these particulate materials. The particle boards fabricated with sugarcane bagasse and castor oil resin presented similar old colonization compared to the commercial wood particle boards. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是在自然和加速测试条件下,与商业中密度木质碎料板(MDP)相比,研究使用蓖麻油聚氨酯树脂的替代甘蔗蔗渣碎料板(BCP)的性能。在巴西的Pirassununga(21.9965°S,47.4262°W)自然气候中暴露12个月后,通过在实验室条件下进行的霉菌生长加速测试,对刨花板进行了评估。根据标准ASTM D 3273-12(2012)对霉菌生长进行定量,并通过比例机会模型(PCM)通过统计分析对结果进行评估。对于这两种材料,蓖麻油基双组分聚氨酯树脂的表面涂层比未涂层的材料具有较低的定植性。与刨花板类型无关。此外,弯曲试验表明,与商用木质刨花板(3.6 MPa)相比,甘蔗渣刨花板经过加速定型菌落测试后,其弹性模量(MOR)(7.7 MPa)更好。用蓖麻油基聚氨酯树脂进行的表面涂层减少了霉菌的生长,因此,这些结果支持了这种替代树脂在这些颗粒材料中既可以用作粘合剂也可以用作表面涂层。与商业木材刨花板相比,用甘蔗渣和蓖麻油树脂制成的刨花板具有类似的旧菌落现象。 (C)2016 Elsevier Ltd.保留所有权利。

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